OMNIS - a whole new level of performance
Others | 2018 | MetrohmInstrumentation
Automation in titration workflows addresses growing demands for high throughput, reproducibility, and enhanced safety. The OMNIS platform sets a new benchmark by combining unattended operation, modular expandability, and intuitive control.
The primary goal of this system is to streamline routine and advanced titration analyses. Key objectives include maximizing sample throughput, ensuring traceable reagent handling, and offering flexible system expansion to adapt to evolving laboratory needs.
The OMNIS ecosystem comprises:
The platform integrates automated reagent exchange, sample rack loading, and four parallel titrations. Its intuitive drag & drop interface offers full graphical representation and remote access. System readiness is signaled via color-coded LEDs, and all consumables are traceable via RFID tags.
Performance benchmarks demonstrate:
Key advantages include:
Future developments may focus on:
The OMNIS platform redefines titration automation by delivering unprecedented throughput, safety, and flexibility. Its modular architecture and intuitive interface position it as a future-proof solution for diverse analytical demands.
Titration, Titration Karl Fischer
IndustriesManufacturerMetrohm
Summary
Importance of the topic
Automation in titration workflows addresses growing demands for high throughput, reproducibility, and enhanced safety. The OMNIS platform sets a new benchmark by combining unattended operation, modular expandability, and intuitive control.
Objectives and overview of the system
The primary goal of this system is to streamline routine and advanced titration analyses. Key objectives include maximizing sample throughput, ensuring traceable reagent handling, and offering flexible system expansion to adapt to evolving laboratory needs.
Used Instrumentation
The OMNIS ecosystem comprises:
- Main titrator unit supporting up to two measuring modules.
- Titration/Dosing module for parallel or independent operations.
- Solvent handling module with contact-free exchange.
- Work Stations (Module A and B) for pumps and pick & place functionality.
- Liquid adapter with RFID-enabled reagent tracking.
- Sample Robots (S, M, L) accommodating up to 175 sample positions and multiple pumps or pick & place units.
- Digital and analog measuring modules (dTrodes) with optical signal transfer.
Methodology
The platform integrates automated reagent exchange, sample rack loading, and four parallel titrations. Its intuitive drag & drop interface offers full graphical representation and remote access. System readiness is signaled via color-coded LEDs, and all consumables are traceable via RFID tags.
Main results and discussion
Performance benchmarks demonstrate:
- Up to 175 samples processed unattended, with up to four titrations in parallel.
- Reagent exchange completed in seconds without manual contact.
- Complete process traceability and self-monitoring capabilities.
- Compact footprint with scalable add-on modules.
- Uniform access to all sample results at a single glance.
Benefits and practical applications
Key advantages include:
- Enhanced laboratory throughput and reduced hands-on time.
- Improved safety via contact-free operations and real-time monitoring.
- Modular design permits stepwise investment and future upgrades.
- Comprehensive data traceability supports QA/QC and regulatory compliance.
- Centralized control enables remote operation and workflow efficiency.
Future trends and potential applications
Future developments may focus on:
- Integration with LIMS and AI-driven data evaluation.
- Expanded sensor technologies for new analyte classes.
- Cloud connectivity for distributed laboratories.
- Eco-friendly reagent management and waste minimization.
- Customization for specialized industrial or pharmaceutical workflows.
Conclusion
The OMNIS platform redefines titration automation by delivering unprecedented throughput, safety, and flexibility. Its modular architecture and intuitive interface position it as a future-proof solution for diverse analytical demands.
Content was automatically generated from an orignal PDF document using AI and may contain inaccuracies.
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